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Sandy gravel stratum deep foundation pit dewatering intelligent control system and method
The invention provides a sandy gravel stratum deep foundation pit dewatering intelligent control system and method, and belongs to the field of civil engineering. The control system comprises an experiment precipitation area, N experiment precipitation wells are arranged on the edge of the experiment precipitation area, N is an integer larger than or equal to 1, the specific i experiment precipitation wells serve as an optimal experiment precipitation well combination, an experiment observation well is arranged in the center of the experiment precipitation area, and i is smaller than or equal to N; a working precipitation area and the experiment precipitation area are arranged in parallel, i working precipitation wells are arranged on the edge and/or the center of the working precipitation area, water pumps are arranged in the working precipitation wells, and the working precipitation wells correspond to the experiment precipitation wells in the optimal experiment precipitation well combination one to one. The control method is based on the system. According to the method, the adverse effect of a saturated precipitation mode in the prior art on a foundation pit and the surrounding environment can be reduced, and the construction safety is improved.
本发明提供了一种砂卵石地层深基坑降水智能控制系统及控制方法,属于土木工程领域。控制系统包括包括实验降水区,其边缘处设置有N个实验降水井,N为大于或等于1的整数,特定的i个实验降水井作为最佳实验降水井组合,实验降水区的中心处设置有实验观测井,i小于或等于N;工作降水区,与实验降水区并列设置,其边缘和/或中心处设置有i个工作降水井,工作降水井中设有水泵,每个工作降水井与最佳实验降水井组合中的实验降水井一一对应设置。控制方法基于上述的系统。本发明能够减小现有技术的饱和降水方式对与基坑本身和周边环境带来的不利影响,提高施工的安全性。
Sandy gravel stratum deep foundation pit dewatering intelligent control system and method
The invention provides a sandy gravel stratum deep foundation pit dewatering intelligent control system and method, and belongs to the field of civil engineering. The control system comprises an experiment precipitation area, N experiment precipitation wells are arranged on the edge of the experiment precipitation area, N is an integer larger than or equal to 1, the specific i experiment precipitation wells serve as an optimal experiment precipitation well combination, an experiment observation well is arranged in the center of the experiment precipitation area, and i is smaller than or equal to N; a working precipitation area and the experiment precipitation area are arranged in parallel, i working precipitation wells are arranged on the edge and/or the center of the working precipitation area, water pumps are arranged in the working precipitation wells, and the working precipitation wells correspond to the experiment precipitation wells in the optimal experiment precipitation well combination one to one. The control method is based on the system. According to the method, the adverse effect of a saturated precipitation mode in the prior art on a foundation pit and the surrounding environment can be reduced, and the construction safety is improved.
本发明提供了一种砂卵石地层深基坑降水智能控制系统及控制方法,属于土木工程领域。控制系统包括包括实验降水区,其边缘处设置有N个实验降水井,N为大于或等于1的整数,特定的i个实验降水井作为最佳实验降水井组合,实验降水区的中心处设置有实验观测井,i小于或等于N;工作降水区,与实验降水区并列设置,其边缘和/或中心处设置有i个工作降水井,工作降水井中设有水泵,每个工作降水井与最佳实验降水井组合中的实验降水井一一对应设置。控制方法基于上述的系统。本发明能够减小现有技术的饱和降水方式对与基坑本身和周边环境带来的不利影响,提高施工的安全性。
Sandy gravel stratum deep foundation pit dewatering intelligent control system and method
一种砂卵石地层深基坑降水智能控制系统及控制方法
ZHOU XIBING (Autor:in) / ZHANG ZILONG (Autor:in) / DU SHIYOU (Autor:in) / HU JIAN (Autor:in) / LIANG SHENGYOU (Autor:in) / ZHOU BO (Autor:in) / WANG YIZE (Autor:in) / LI LONG (Autor:in) / JING XIN (Autor:in)
24.12.2021
Patent
Elektronische Ressource
Chinesisch
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